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首页> 外文期刊>Soil & Tillage Research >Reference bulk density and critical degree-of-compactness for no-till crop production in subtropical highly weathered soils
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Reference bulk density and critical degree-of-compactness for no-till crop production in subtropical highly weathered soils

机译:亚热带高风化土壤中免耕作物生产的参考堆密度和临界密实度

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摘要

The concept of degree of compactness (DC), referred to as field bulk density (BD) as a percentage of a reference bulk density (BDref), was developed to characterize compactness of soil frequently disturbed, but for undisturbed soil such as under no-tillage critical degree of compactness values have not been tested. The objective of this study was to compare methods to determine BDref and limits of DC and BD for plant growth under no-tillage in subtropical soils. Data from the literature and other databases were used to establish relationships between BD and clay or clay plus silt content, and between DC and macroporosity and yield of crops under no-tillage in subtropical Brazil. Data of BDref reached by the soil Proctor test on disturbed soil samples, by uniaxial compression with loads of 200kPa on disturbed and undisturbed soil samples, and 400, 800 and 1600kPa on undisturbed soil samples, were used. Also, comparisons were made with critical bulk density based on the least limiting water range (BDc LLWR) and on observed root and/or yield restriction in the field (BDc Rest). Using vertical uniaxial compression with a load of 200kPa on disturbed or undisturbed samples generates low BDref and high DC-values. The standard Proctor test generates higher BDref-values, which are similar to those in a uniaxial test with a load of 1600kPa for soils with low clay content but lower for soils with high clay content. The BDc LLWR does not necessarily restrict root growth or crop yield under no-tillage, since field investigations led to higher BDc Rest-values. A uniaxial load greater than 800kPa is promising to determine BDref for no-tillage soils. The BDref is highly correlated to the clay content and thus pedotransfer functions may be established to estimate the former based on the latter. Soil ecological properties are affected before compaction restricts plant growth and yield. The DC is an efficient parameter to identify soil compaction affecting crops. The effect of compaction on ecological properties must also be further considered.
机译:压实度(DC)的概念被称为野外容重(BD)占参考容重(BDref)的百分比,旨在表征经常被扰动的土壤的压实度,但对于未受干扰的土壤(例如在非土壤条件下)耕作的密实度临界值尚未经过测试。本研究的目的是比较确定亚热带土壤免耕条件下植物生长的BDref和DC和BD极限的方法。利用文献和其他数据库中的数据来确定BD与亚热带巴西免耕条件下的BD与粘土或粘土加淤泥含量之间的关系,以及DC与大孔隙度与作物产量之间的关系。使用通过土壤Proctor试验获得的BDref数据,对受扰动和未扰动的土壤样品进行单轴压缩,载荷为200kPa,对受扰动和未扰动的土壤样品施加400kPa,800kPa和1600kPa的载荷。此外,还根据最低限度水域范围(BDc LLWR)和田间观察到的根和/或产量限制(BDc Rest)与临界堆密度进行了比较。在受到干扰或不受干扰的样本上使用200kPa负载的垂直单轴压缩会产生低BDref和高DC值。标准的Proctor测试产生较高的BDref值,这与粘土含量低的土壤在1600kPa负载下的单轴测试相似,而粘土含量高的土壤则较低。 BDc LLWR不一定会限制免耕条件下的根系生长或作物产量,因为田间调查导致BDc静止值更高。大于800kPa的单轴载荷有望确定免耕土壤的BDref。 BDref与粘土含量高度相关,因此可以建立pedotransfer函数以基于后者来估计前者。在压实限制植物生长和产量之前,土壤生态特性会受到影响。 DC是识别影响土壤压实作物的有效参数。压实对生态特性的影响也必须进一步考虑。

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